SKYBRIDGE · ENERGY INFRASTRUCTURE

Power for Compute.

A real island-mode energy asset delivering contracted capacity blocks and metered powered space—built for uptime, predictable pricing, and operational clarity.

Off-Grid Deterministic Delivery Controlled Access
Off-grid gas-to-power facility with modular compute deployment

On-site generation with controlled, modular compute offtake.

The facility generates power on-site and distributes it through a central medium-voltage switchgear lineup to defined load zones. This reduces dependence on the public grid and makes delivered capacity predictable—critical for long-duration compute workloads.

For operational credibility and reliability, capacity is presented as bankable planning zones: a baseline block (Load A) can run efficiently at steady state, while a separate block (Load B) is designed for higher-density, SLA-aligned deployments. Open pads indicate reserve and expansion without overbuild.

Config: 13.8 kV · 60 Hz · OFF-GRID · 22.41 MVA @ PF~0.80

TRUST & RELIABILITY

Why Skybridge

Infrastructure-first delivery: measurable capacity, metered energy, and operational control—built for long-duration compute.

True Island Mode

Off-grid operation reduces dependency on public grid dynamics and enables controlled delivery planning.

Auditable Delivery

Transparent metering supports reliable invoicing and operational reporting cadence for stakeholders.

Modular Expansion

Capacity scales via standard pods, blocks, and pad allocations—without redesigning the site each phase.

Operational Governance

Defined access, acceptance, and maintenance windows protect stability and availability.

Liquid-Ready

A practical path from baseline air cooling to high-density liquid deployments based on workload.

Controlled Access

Clear access procedures and optional remote hands enable predictable operations across tenants.

13.8 kV · 60 Hz 17.93 MW net class Standard Pods Pad Expansion Ready
Prime Movers Control Deck
4x CAT G3616 · 4x CAT G3516
22.41 MVA @ 0.80 PF | 13.8 kV Bus
OFF-GRID
TOTAL CAP 17.93 MW
Active Load
16.42MW
Bus Freq (Island)
60.00Hz
Power Factor
0.80pf
Bus Voltage
13.8kV
Plant Load Allocation
TARGET: 1.0 MW
Est. Monthly OpEx
$0
Contract Rate ($/kWh)
$
Gas Input
Turbine
Generation 17.93 MW
Compute

Profitability Calculator

Estimate potential earnings by inputting your hash rate or selecting a device. Compare profitability across ASIC, GPU, CPU, and AI Cloud rentals based on current market data and electricity costs.

PRO-CALC / V.5.5
ONLINE
HARDWARE CONFIG
MARKET CONDITIONS
Efficiency Check --
Revenue (24h)
$0.00
Power Cost
-$0.00
Net Profit
$0.00
PROJECTION ANALYSIS
1D
1W
$0
1M
$0
1Y
Monthly Net $0.00
CONTRACTING MODEL

How contracting works

A straightforward model built for predictable delivery: reserve capacity, meter energy, operate under clear standards.

STEP 01

Reserve capacity

Capacity is contracted as kW/MW blocks aligned to your deployment phases.

STEP 02

Metered energy delivery

Energy is delivered and billed via metering, providing transparent reporting.

STEP 03

Operational standards

Deployment and access follow defined site rules to protect stability.

SECURE ACCESS

Data room preview

A controlled disclosure process. We share the right documents once access is approved.

Disclosure: Public pages show product structure. Detailed technical documentation is provided after verification and access approval.
HPC-01 (Inference) 8.25 MW
HPC-02 (Training) 9.68 MW
Frequency 60.00 Hz
Island Mode
ID: TX-01 // CRITICAL

17.93MW Net Capacity Output

Direct gas-to-compute conversion active. Zero curtailment. Autonomous load balancing engaged.

Engine Array4× G3616 / 4× G3516
Grid Config13.8 kV / Off-Grid
Power Factor0.80

Enterprise FAQ

Straight answers to the questions that matter for deployment planning, procurement, and operations.

Capacity is reserved as defined kW/MW blocks aligned to your rollout phases. This keeps planning auditable and avoids “best effort” delivery ambiguity.

// NOTE: Exact deliverable IT load depends on deployment architecture, cooling, and operating limits.

Energy delivery is metered and reported on a consistent cadence. Billing is based on measured kWh with contract-defined reporting and invoicing terms.

// NOTE: Commercial terms vary by product (Powered Space / Pads / Hosting) and are shared under controlled access.

We support a practical path from baseline air deployments to liquid-ready designs based on workload requirements and agreed standards.

// NOTE: Final density depends on the chosen cooling architecture and integration approach.

Onboarding follows a defined acceptance and commissioning sequence: site standards review, interconnect checks, safety validation, then energization and steady-state operations.

// NOTE: We share standards and checklists once access is approved.

Operational commitments are defined per product and deployment architecture. We focus on measurable capacity, clear governance, and predictable operating windows.

// NOTE: SLA structures are contract-specific and shared during the access process.

Expansion is designed to be modular: additional capacity blocks and pads can be added as your deployment grows, aligned to phased commissioning.

// NOTE: The specific expansion path depends on availability and the product model you select.

Request access

Tell us what you’re deploying. We’ll share availability, standards, and commercial structure through a controlled access process.

We respond with next steps and the relevant documents. No public posting of sensitive site details.

A Sale Promotion

A description of the promotion and how the visitor could claim the discount